US10885152B2

Systems and methods for monitoring quality of life parameters using non-contact sensors

Summary by NHIP

Non-contact quality monitoring system

The system uses non-contact sensors to distinguish respiratory movement from general bodily motion based on amplitude and frequency values. It calculates a quality of life index from these data streams and generates feedback, including medication recommendations or instructional steps for subjects.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

An apparatus, system, and method for the measurement, aggregation and analysis of data collected using non-contact or minimally-contacting sensors provides quality of life parameters for individual subjects, particularly in the context of a controlled trial of interventions on human subjects (e.g., a clinical trial of a drug, or an evaluation of a consumer item such as a fragrance). In particular, non-contact or minimal-contact measurement of quality-of-life parameters such as sleep, stress, relaxation, drowsiness, temperature and emotional state of humans may be evaluated, together with automated sampling, storage, and transmission to a remote data analysis center. One component of the system is that the objective data is measured with as little disruption as possible to the normal behavior of the subject. The system can also support behavioral and pharmaceutical interventions aimed at improving quality of life.

US10885152B2, drawing sheet 1
Sheet 1 of 10

Term

4.3 yearsleft in the term

Expires 17 January 2031, including 481 days of term adjustment.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

31 claims: 3 independent, 28 dependent

  1. 1
    Broadest claimClaim Score 49, average(NHIP)A system comprising:a first non-contact sensor configured to generate first measured data based on transmitted signals emitted towards a subject and received signals reflected from the subject;one or more processors;and a non-transitory computer readable storage medium having instructions that, when executed by the one or more processors, cause the one or more processors to: receive the first measured data;distinguish periods of the first measured data in which respiratory-related movement is predominant from periods of the first measured data in which bodily movement is predominant based on an amplitude value and a frequency value derived from the first measured data;obtain respiratory data from the periods of the first measured data in which respiratory-related movement is predominant;obtain movement data from the periods of the first measured data in which bodily movement is predominant;calculate a quality of life index based on the respiratory data and the movement data;and generate feedback based on the calculated quality of life index.
  2. 11
    A method comprising:transmitting, with a first non-contact sensor, signals towards a subject;receiving, with the first non-contact sensor, signals reflected from the subject;generating, with the first non-contact sensor, first measured data based on the transmitted and received signals;receiving, with one or more processors, the first measured data;distinguishing, with the one or more processors, periods of the first measured data in which respiratory-related movement is predominant from periods of the first measured data in which bodily movement is predominant based on an amplitude value and a frequency value derived from the first measured data;obtaining, with the one or more processors, respiratory data from the periods of the first measured data in which respiratory-related movement is predominant;obtaining, with the one or more processors, movement data from the periods of the first measured data in which bodily movement is predominant;calculating, with the one or more processors, a quality of life index based on the respiratory data and the movement data;and generating, with the one or more processors, feedback based on the calculated quality of life index.
  3. 21
    A system comprising:a non-contact sensor configured to receive a signal reflected from a subject and obtain measured data from the reflected signal;an input device configured to collect subjective data associated with the subject, wherein the subjective data comprises sleep quality data;one or more processors;and a non-transitory computer readable storage medium having instructions that, when executed by the one or more processors, cause the one or more processors to: receive the measured data from the non-contact sensor;receive the subjective data from the input device;distinguish periods of the measured data in which respiratory-related movement is predominant from periods of the measured data in which bodily movement is predominant based on an amplitude value and a frequency value derived from the measured data;obtain respiratory data from the periods of the measured data in which respiratory-related movement is predominant;obtain movement data from the periods of the measured data in which bodily movement is predominant;calculate a sleep quality of life (SQOL) index based on the subjective data, the respiratory data, and the movement data;and generate feedback based on the calculated SQOL index.